Key Laboratory for Green Chemical Process of Ministry of Education, School of Chemical Engineering and Pharmacy, Wuhan Institute of Technology, Wuhan 430205, PR China.
Key Laboratory for Green Chemical Process of Ministry of Education, School of Chemical Engineering and Pharmacy, Wuhan Institute of Technology, Wuhan 430205, PR China.
Bioorg Med Chem. 2019 Jan 15;27(2):416-424. doi: 10.1016/j.bmc.2018.12.018. Epub 2018 Dec 12.
Competitive antagonists (CAs) of ionotropic GABA receptors (GABARs) reportedly exhibit insecticidal activity and have potential for development as novel insecticides for overcoming emerging resistance to traditional GABAR-targeting insecticides. Our previous studies demonstrated that 4,5-disubstituted 3-isoxazolols or 3-isothiazolols are an important class of insect GABAR CAs. In the present study, we synthesized a series of 4-aryl-5-carbamoyl-3-isoxazolols and examined their antagonism of insect GABARs expressed in Xenopus oocytes. Several of these 3-isoxazolols exhibited potent antagonistic activities against housefly and common cutworm GABARs, with IC values in the low-micromolar range in both receptors. 4-(3-Amino-4-methylphenyl)-5-carbamoyl-3-isoxazolol (3u) displayed the highest antagonism, with IC values of 2.0 and 0.9 μM in housefly and common cutworm GABARs, respectively. Most of the synthesized 3-isoxazolols showed moderate larvicidal activities against common cutworms, with more than 50% mortality at 100 μg/g. These results indicate that 4-monocyclic aryl-5-carbamoyl-3-isoxazolol is a promising scaffold for insect GABAR CA discovery and provide important information for the design and development of GABAR-targeting insecticides with a novel mode of action.
竞争型离子型 GABA 受体(GABAR)拮抗剂(CA)据称具有杀虫活性,有望开发成为新型杀虫剂,以克服传统 GABAR 靶向杀虫剂出现的抗药性。我们之前的研究表明,4,5-取代 3-异恶唑醇或 3-异噻唑醇是一类重要的昆虫 GABAR CA。在本研究中,我们合成了一系列 4-芳基-5-氨基甲酰基-3-异恶唑醇,并研究了它们对表达在非洲爪蟾卵母细胞中的昆虫 GABAR 的拮抗作用。其中几种 3-异恶唑醇对家蝇和黏虫 GABAR 表现出很强的拮抗活性,在两种受体中 IC 值均在低微摩尔范围内。4-(3-氨基-4-甲基苯基)-5-氨基甲酰基-3-异恶唑醇(3u)表现出最高的拮抗活性,在家蝇和黏虫 GABAR 中的 IC 值分别为 2.0 和 0.9 µM。大多数合成的 3-异恶唑醇对黏虫表现出中等的杀虫活性,在 100 µg/g 时死亡率超过 50%。这些结果表明,4-单环芳基-5-氨基甲酰基-3-异恶唑醇是昆虫 GABAR CA 发现的一个有前途的骨架,为设计和开发具有新型作用模式的 GABAR 靶向杀虫剂提供了重要信息。